RIMBP3B cDNA ORF clone, Homo sapiens(human)

The following RIMBP3B gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the RIMBP3B cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+/C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.

***CloneID Accession No. Definition **Vector *Turnaround time Price (USD) Select
OHu31944 NM_001128635.1
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Homo sapiens RIMS binding protein 3B (RIMBP3B), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $923.30
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** You may select a custom vector to replace pcDNA3.1+/C-(K)DYK after clone is added to cart.

** GenScript guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories. In addition, please pay attention to the signal peptide, propeptide and transit peptide in target ORF, which may affect the choice of vector (N/C terminal tag vector).

***One clone ID might be correlated to multiple accession numbers, which share the same CDS sequence.

  • Reference Sequences (Refseq)
    CloneID OHu31944
    Clone ID Related Accession (Same CDS sequence) NM_001128635.1
    Accession Version NM_001128635.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4920bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-04-30
    Organism Homo sapiens(human)
    Product RIMS-binding protein 3B
    Comment Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from DB455171.1, AP000552.1 and BX112696.1. On Jun 22, 2008 this sequence version replaced XM_036936.5. Sequence Note: This RefSeq record was created from transcript and genomic sequence data to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on alignments. ##RefSeq-Attributes-START## RefSeq Select criteria :: based on single protein-coding transcript ##RefSeq-Attributes-END## COMPLETENESS: complete on the 3' end.

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    ATGGCCAAGG ACTCGCCCAG CCCCTTGGGC GCGTCGCCCA AGAAGCCGGG CTGCTCCAGC 
    CCGGCGGCGG CAGTGCTGGA GAACCAGAGG CGGGAGCTGG AGAAGCTACG GGCGGAGCTG
    GAGGCGGAGC GGGCAGGCTG GCGGGCGGAA CGGCGGCGCT TCGCTGCCCG GGAGCGCCAG
    CTGCGTGAGG AGGCCGAGCG GGAGCGGCGG CAGCTGGCTG ACCGTCTGCG CTCCAAGTGG
    GAGGCACAGC GCAGCCGGGA GTTGCGGCAG CTGCAAGAGG AGATGCAGCG GGAACGCGAG
    GCCGAGATCC GGCAGCTGCT GCGCTGGAAG GAGGCCGAGC AGCGGCAGCT GCAGCAGCTG
    CTGCACCGGG AGCGCGATGG CGTGGTGCGC CAAGCCCGGG AGCTGCAGCG CCAGCTGGCC
    GAGGAGCTGG TGAACCGCGG CCACTGTAGC CGCCCGGGGG CGTCCGAGGT TTCCGCGGCG
    CAGTGCCGCT GTCGCCTGCA GGAAGTGTTG GCGCAGCTTC GCTGGCAGAC TGACGGCGAG
    CAGGCGGCGC GCATCCGCTA TCTGCAGGCG GCGCTGGAGG TGGAGCGCCA GCTCTTCCTC
    AAGTACATCC TGGCGCACTT CCGCGGGCAC CCGGCTTTGT CGGGATCACC GGACCCCCAA
    GCTGTGCATT CCTTGGAAGA ACCGCTGCCC CAGACCTCCA GCGGCTCTTG CCACGCCCCC
    AAACCCGCCT GCCAACTCGG ATCTCTAGAC AGCCTGAGTG CTGAAGTCGG TGTGCGCTCC
    CGCTCGCTAG GCCTGGTGTC CTCTGCGTGC TCCAGCTCCC CAGACGGCCT GCTCTCCACG
    CACGCCAGCT CCCTTGATTG CTTCGCACCT GCGTGTTCCC GCTCGCTTGA CAGCACCCGG
    AGCCTCCCCA AGGCCTCCAA ATCCGAGGAG CGGCCCTCCT CACCAGACAC CTCCACCCCT
    GGCTCCCGGA GGCTCTCGCC GCCACCATCG CCACTCCCGC CGCCACCACC ACCGTCAGCC
    CACAGGAAAC TCAGCAACCC GCGGGGAGGA GAAGGCTCTG AGAGCCAGCC CTGCGAAGTC
    CTGACTCCCT CACCCCCGGG CCTGGGCCAC CACGAGCTGA TAAAGCTGAA CTGGCTGCTG
    GCCAAGGCGT TGTGGGTGCT GGCGCGCCGC TGTTATACCC TGCAAGAGGA GAACAAGCAG
    CTGCGGCGTG CAGGCTGCCC CTACCAGGCA GACGAGAAGG TGAAGCGGCT CAAGGTAAAG
    CGCGCGGAGC TGACCGGGCT CGCGCGGCGC CTAGCTGACC GCGCCCGCGA GCTGCAGGAG
    ACCAACCTCC GGGCCGTGAG CGCGCCTATA CCCGGCGAGA GTTGCGCCGG CCTGGAGCTG
    TGCCAAGTCT TTGCCCGCCA GCGCGCTCGG GACCTGTCGG AGCAGGCGAG CGCGCCGCTG
    GCCAAGGACA AGCAGATCGA AGAGCTGCGG CAGGAGTGCC ACCTCCTGCA GGCGCGTGTC
    GCCTCGGGTC CCTGCAGCGA CCTGCATACT GGAAGGGGCG GCCCCTGCAC CCAGTGGCTC
    AACGTCAGAG ACTTAGACCG CCTGCAGCGC GAGTCCCAGC GGGAAGTGCT GCGCCTGCAG
    AGGCAGTTGA TGCTTCAGCA GGGCAACGGT GGCGCTTGGC CCGAGGCGGG CGGCCAGAGC
    GCAACCTGCG AGGAGGTGCG ACGGCAGATG CTGGCGCTGG AGCGCGAGCT GGACCAGCGG
    CGGCGCGAGT GCCAGGAGCT GGGCACGCAG GCGGCCCCGG CGCGGCGACG TGGCGAGGAG
    GCCGAGACAC AGCTGCAGGC GGCGCTGCTC AAAAACGCCT GGCTGGCGGA GGAGAATGGG
    CGGCTGCAGG CCAAGACCGA CTGGGTGCGG AAGGTGGAGG CTGAGAATAG CGAAGTGCGC
    GGCCACCTGG GCCGCGCGTG TCAAGAGCGC GATGCCTCCG GCTTGATCGC CGAACAGCTG
    CTGCAGCAGG CGGCGCGCGG GCAGGACAGG CAGCAGCAGC TGCAACGCGA CCCGCAGAAG
    GCCCTGTGTG ACCTCCATCC TTCCTGGAAG GAGATACAGG CGCTCCAGTG TCGGCCTGGT
    CACCCTCCTG AACAGCCCTG GGAGACCAGT CAAATGCCGG AGTCCCAAGT TAAAGGTAGC
    AGAAGGCCCA AGTTCCACGC ACGGCCTGAA GACTACGCAG TGTCACAGCC CAACAGAGAC
    ATACAGGAGA AAAGGGAAGC CTCCCTCGAG GAGAGCCCAG TTGCCCTTGG GGAGTCAGCC
    AGTGTCCCCC AAGTTTCAGA GACAGTCCCT GCCAGCCAAC CTCTGTCCAA GAAAACCAGC
    TCCCAGTCAA ACTCCTCCTC TGAGGGGTCG ATGTGGGCCA CCGTGCCGTC CTCCCCTACT
    CTGGACAGGG ACACAGCCAG TGAGGTGGAT GACCTGGAGC CTGACAGCGT GTCCCTGGCC
    CTGGAAATGG GGGGCTCGGC GGCTCCTGCT GCCCCCAAGC TCAAGATCTT CATGGCTCAG
    TATAACTACA ACCCATTTGA GGGGCCCAAT GATCACCCTG AGGGTGAGCT GCCCCTCACA
    GCTGGGGACT ACATATATAT CTTCGGGGAC ATGGATGAGG ATGGCTTCTA TGAGGGGGAG
    CTTGACGATG GCCGGCGGGG GCTGGTGCCC TCCAACTTCG TGGAGCAGAT TCCGGACAGC
    TACATCCCAG GCTGCCTGCC TGCCAAATCC CCTGATCTTG GCCCCAGTCA ACTCCCAGCG
    GGGCAGGATG AAGCTCTGGA GGAAGACAGC TTATTATCTG GGAAAGCCCA GGGAATGGTG
    GACAGAGGGC TGTGCCAGAT GGTCAGGGTG GGCTCCAAGA CAGAAGTAGC AACAGAGATC
    CTGGATACCA AGACGGAAGC CTGCCAGCTG GGCTTGCTGC AGAGCATGGG GAAGCAGGGC
    CTCTCCAGAC CCCTTCTGGG GACCAAAGGG GTGCTCCGTA TGGCTCCCAT GCAGCTACAC
    CTGCAGAATG TCACAGCCAC ATCAGCCAAC ATCACCTGGG TCTACAGCAG CCACCGCCAC
    CCCCATGTGG TATATCTTGA TGACCGAGAG CATGCCCTGA CCCCAGCGGG CGTGAGCTGC
    TACACCTTCC AGGGCCTGTG CCCCGGCACG CACTACCGGG TGCGGGTGGA GGTGCGGCTG
    CCATGGGACT TGCTGCAGGT GTATTGGGGA ACTATGTCCT CCACCGTCAC CTTCGACACA
    CTCTTGGCAG GACCTCCCTA CCCACCGCTG GAGGTGCTGG TGGAGCGCCA TGCCTCGCCA
    GGTGTCCTGG TGGTCAGCTG GCTCCCTGTG ACCATTGACT CAGCTGGGTC CTCCAATGGA
    GTCCAGGTCA CCGGTTATGC TGTGTATGCA GATGGGCTTA AGGTTTGTGA GGTCGCCGAT
    GCCACTGCTG GGAGCACCGT ATTGGAATTC TCCCAGCTAC AGGTGCCCCT CACGTGGCAG
    AAGGTCTCAG TGAGAACCAT GTCACTCTGT GGTGAGTCCC TGGATTCAGT GCCTGCTCAG
    ATCCCCGAGG ACTTCTTCAT GTGTCACCGA TGGCCAGAGA CTCCACCCTT TAGCTACACT
    TGTGGCGACC CATCCACCTA CAGAGTCACC TTCCCCGTCT GCCCCCAGAA GCTGTCACTG
    GCTCCTCCGA GTGCCAAGGC CAGCCCCCAC AACCCTGGAA GCTGCGGGGA GCCCCAGGCC
    AAGTTCCTAG AAGCATTCTT TGAAGAACCC CCAAGGAGGC AATCCCCAGT GTCCAACCTG
    GGCTCAGAAG GAGAATGTCC GAGTTCAGGG GCTGGCAGCC AAGCCCAGGA GCTTGCAGAG
    GCCTGGGAGG GCTGTAGAAA GGACCTGCTC TTTCAGAAGA GTCCCCAGAA CCACAGGCCA
    CCTTCAGTCA GTGACCAGCC TGGGGAGAAG GAAAATTGCT ACCAGCACAT GGGCACCAGC
    AAAAGCCCTG CTCCAGGATT CATCCATCTA CGCACCGAGT GTGGGCCCAG GAAAGAACCG
    TGTCAGGAAA AGGCTGCCCT TGAGAGGGTA CTTCGGCAAA AGCAAGATGC CCAAGGGTTC
    ACACCTCCCC AGCTGGGCGC CAGCCAACAG TATGCATCTG ACTTCCATAA CGTTTTGAAG
    GAGGAGCAGG AGGCACTGTG CTTGGATCTG CGGGGCACAG AGAGGCGAGA GGAGAGGAGG
    GAGCCTGAGC CCCACAGCAG GCAAGGACAA GCTCTGGGGG TGAAGAGAGG GTGCCAGCTC
    CATGAGCCCA GCTCGGCACT GTGTCCAGCT CCATCCGCCA AAGTCATCAA GATGCCCAGG
    GGTGGCCCCC AACAGCTGGG GACGGGGGCC AACACTCCAG CCAGGGTCTT TGTGGCCCTC
    TCTGATTACA ACCCCCTGGT GATGTCTGCC AACCTCAAGG CTGCAGAGGA GGAGCTGGTC
    TTCCAGAAAA GGCAGTTGCT AAGAGTGTGG GGCTCTCAGG ACACCCATGA TTTCTACCTC
    AGCGAGTGCA ACAGGCAAGT GGGCAATATC CCCGGGCGCC TAGTGGCTGA GATGGAGGTG
    GGGACAGAGC AGACTGATAG GAGGTGGCGT TCTCCGGCCC AAGGGCACCT GCCTTCTGTG
    GCCCACCTCG AGGACTTTCA GGGGCTCACC ATCCCCCAGG GTTCCTCCCT GGTGCTCCAG
    GGGAACTCCA AGAGACTCCC ACTGTGGACT CCAAAGATCA TGATAGCAGC TCTGGACTAT
    GATCCTGGGG ATGGGCAAAT GGGGGGCCAG GGGAAGGGCA GGCTGGCGCT GAGGGCAGGA
    GACGTGGTCA TGGTTTACGG GCCCATGGAT GACCAAGGAT TCTATTATGG AGAGTTGGGC
    GGCCACAGGG GCCTGGTTCC TGCCCACCTG CTGGATCACA TGTCCCTCCA TGGACACTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq NP_001122107.1
    CDS109..5028
    Translation

    Target ORF information:

    RefSeq Version NM_001128635.1
    Organism Homo sapiens(human)
    Definition Homo sapiens RIMS binding protein 3B (RIMBP3B), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001128635.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    ATGGCCAAGG ACTCGCCCAG CCCCTTGGGC GCGTCGCCCA AGAAGCCGGG CTGCTCCAGC 
    CCGGCGGCGG CAGTGCTGGA GAACCAGAGG CGGGAGCTGG AGAAGCTACG GGCGGAGCTG
    GAGGCGGAGC GGGCAGGCTG GCGGGCGGAA CGGCGGCGCT TCGCTGCCCG GGAGCGCCAG
    CTGCGTGAGG AGGCCGAGCG GGAGCGGCGG CAGCTGGCTG ACCGTCTGCG CTCCAAGTGG
    GAGGCACAGC GCAGCCGGGA GTTGCGGCAG CTGCAAGAGG AGATGCAGCG GGAACGCGAG
    GCCGAGATCC GGCAGCTGCT GCGCTGGAAG GAGGCCGAGC AGCGGCAGCT GCAGCAGCTG
    CTGCACCGGG AGCGCGATGG CGTGGTGCGC CAAGCCCGGG AGCTGCAGCG CCAGCTGGCC
    GAGGAGCTGG TGAACCGCGG CCACTGTAGC CGCCCGGGGG CGTCCGAGGT TTCCGCGGCG
    CAGTGCCGCT GTCGCCTGCA GGAAGTGTTG GCGCAGCTTC GCTGGCAGAC TGACGGCGAG
    CAGGCGGCGC GCATCCGCTA TCTGCAGGCG GCGCTGGAGG TGGAGCGCCA GCTCTTCCTC
    AAGTACATCC TGGCGCACTT CCGCGGGCAC CCGGCTTTGT CGGGATCACC GGACCCCCAA
    GCTGTGCATT CCTTGGAAGA ACCGCTGCCC CAGACCTCCA GCGGCTCTTG CCACGCCCCC
    AAACCCGCCT GCCAACTCGG ATCTCTAGAC AGCCTGAGTG CTGAAGTCGG TGTGCGCTCC
    CGCTCGCTAG GCCTGGTGTC CTCTGCGTGC TCCAGCTCCC CAGACGGCCT GCTCTCCACG
    CACGCCAGCT CCCTTGATTG CTTCGCACCT GCGTGTTCCC GCTCGCTTGA CAGCACCCGG
    AGCCTCCCCA AGGCCTCCAA ATCCGAGGAG CGGCCCTCCT CACCAGACAC CTCCACCCCT
    GGCTCCCGGA GGCTCTCGCC GCCACCATCG CCACTCCCGC CGCCACCACC ACCGTCAGCC
    CACAGGAAAC TCAGCAACCC GCGGGGAGGA GAAGGCTCTG AGAGCCAGCC CTGCGAAGTC
    CTGACTCCCT CACCCCCGGG CCTGGGCCAC CACGAGCTGA TAAAGCTGAA CTGGCTGCTG
    GCCAAGGCGT TGTGGGTGCT GGCGCGCCGC TGTTATACCC TGCAAGAGGA GAACAAGCAG
    CTGCGGCGTG CAGGCTGCCC CTACCAGGCA GACGAGAAGG TGAAGCGGCT CAAGGTAAAG
    CGCGCGGAGC TGACCGGGCT CGCGCGGCGC CTAGCTGACC GCGCCCGCGA GCTGCAGGAG
    ACCAACCTCC GGGCCGTGAG CGCGCCTATA CCCGGCGAGA GTTGCGCCGG CCTGGAGCTG
    TGCCAAGTCT TTGCCCGCCA GCGCGCTCGG GACCTGTCGG AGCAGGCGAG CGCGCCGCTG
    GCCAAGGACA AGCAGATCGA AGAGCTGCGG CAGGAGTGCC ACCTCCTGCA GGCGCGTGTC
    GCCTCGGGTC CCTGCAGCGA CCTGCATACT GGAAGGGGCG GCCCCTGCAC CCAGTGGCTC
    AACGTCAGAG ACTTAGACCG CCTGCAGCGC GAGTCCCAGC GGGAAGTGCT GCGCCTGCAG
    AGGCAGTTGA TGCTTCAGCA GGGCAACGGT GGCGCTTGGC CCGAGGCGGG CGGCCAGAGC
    GCAACCTGCG AGGAGGTGCG ACGGCAGATG CTGGCGCTGG AGCGCGAGCT GGACCAGCGG
    CGGCGCGAGT GCCAGGAGCT GGGCACGCAG GCGGCCCCGG CGCGGCGACG TGGCGAGGAG
    GCCGAGACAC AGCTGCAGGC GGCGCTGCTC AAAAACGCCT GGCTGGCGGA GGAGAATGGG
    CGGCTGCAGG CCAAGACCGA CTGGGTGCGG AAGGTGGAGG CTGAGAATAG CGAAGTGCGC
    GGCCACCTGG GCCGCGCGTG TCAAGAGCGC GATGCCTCCG GCTTGATCGC CGAACAGCTG
    CTGCAGCAGG CGGCGCGCGG GCAGGACAGG CAGCAGCAGC TGCAACGCGA CCCGCAGAAG
    GCCCTGTGTG ACCTCCATCC TTCCTGGAAG GAGATACAGG CGCTCCAGTG TCGGCCTGGT
    CACCCTCCTG AACAGCCCTG GGAGACCAGT CAAATGCCGG AGTCCCAAGT TAAAGGTAGC
    AGAAGGCCCA AGTTCCACGC ACGGCCTGAA GACTACGCAG TGTCACAGCC CAACAGAGAC
    ATACAGGAGA AAAGGGAAGC CTCCCTCGAG GAGAGCCCAG TTGCCCTTGG GGAGTCAGCC
    AGTGTCCCCC AAGTTTCAGA GACAGTCCCT GCCAGCCAAC CTCTGTCCAA GAAAACCAGC
    TCCCAGTCAA ACTCCTCCTC TGAGGGGTCG ATGTGGGCCA CCGTGCCGTC CTCCCCTACT
    CTGGACAGGG ACACAGCCAG TGAGGTGGAT GACCTGGAGC CTGACAGCGT GTCCCTGGCC
    CTGGAAATGG GGGGCTCGGC GGCTCCTGCT GCCCCCAAGC TCAAGATCTT CATGGCTCAG
    TATAACTACA ACCCATTTGA GGGGCCCAAT GATCACCCTG AGGGTGAGCT GCCCCTCACA
    GCTGGGGACT ACATATATAT CTTCGGGGAC ATGGATGAGG ATGGCTTCTA TGAGGGGGAG
    CTTGACGATG GCCGGCGGGG GCTGGTGCCC TCCAACTTCG TGGAGCAGAT TCCGGACAGC
    TACATCCCAG GCTGCCTGCC TGCCAAATCC CCTGATCTTG GCCCCAGTCA ACTCCCAGCG
    GGGCAGGATG AAGCTCTGGA GGAAGACAGC TTATTATCTG GGAAAGCCCA GGGAATGGTG
    GACAGAGGGC TGTGCCAGAT GGTCAGGGTG GGCTCCAAGA CAGAAGTAGC AACAGAGATC
    CTGGATACCA AGACGGAAGC CTGCCAGCTG GGCTTGCTGC AGAGCATGGG GAAGCAGGGC
    CTCTCCAGAC CCCTTCTGGG GACCAAAGGG GTGCTCCGTA TGGCTCCCAT GCAGCTACAC
    CTGCAGAATG TCACAGCCAC ATCAGCCAAC ATCACCTGGG TCTACAGCAG CCACCGCCAC
    CCCCATGTGG TATATCTTGA TGACCGAGAG CATGCCCTGA CCCCAGCGGG CGTGAGCTGC
    TACACCTTCC AGGGCCTGTG CCCCGGCACG CACTACCGGG TGCGGGTGGA GGTGCGGCTG
    CCATGGGACT TGCTGCAGGT GTATTGGGGA ACTATGTCCT CCACCGTCAC CTTCGACACA
    CTCTTGGCAG GACCTCCCTA CCCACCGCTG GAGGTGCTGG TGGAGCGCCA TGCCTCGCCA
    GGTGTCCTGG TGGTCAGCTG GCTCCCTGTG ACCATTGACT CAGCTGGGTC CTCCAATGGA
    GTCCAGGTCA CCGGTTATGC TGTGTATGCA GATGGGCTTA AGGTTTGTGA GGTCGCCGAT
    GCCACTGCTG GGAGCACCGT ATTGGAATTC TCCCAGCTAC AGGTGCCCCT CACGTGGCAG
    AAGGTCTCAG TGAGAACCAT GTCACTCTGT GGTGAGTCCC TGGATTCAGT GCCTGCTCAG
    ATCCCCGAGG ACTTCTTCAT GTGTCACCGA TGGCCAGAGA CTCCACCCTT TAGCTACACT
    TGTGGCGACC CATCCACCTA CAGAGTCACC TTCCCCGTCT GCCCCCAGAA GCTGTCACTG
    GCTCCTCCGA GTGCCAAGGC CAGCCCCCAC AACCCTGGAA GCTGCGGGGA GCCCCAGGCC
    AAGTTCCTAG AAGCATTCTT TGAAGAACCC CCAAGGAGGC AATCCCCAGT GTCCAACCTG
    GGCTCAGAAG GAGAATGTCC GAGTTCAGGG GCTGGCAGCC AAGCCCAGGA GCTTGCAGAG
    GCCTGGGAGG GCTGTAGAAA GGACCTGCTC TTTCAGAAGA GTCCCCAGAA CCACAGGCCA
    CCTTCAGTCA GTGACCAGCC TGGGGAGAAG GAAAATTGCT ACCAGCACAT GGGCACCAGC
    AAAAGCCCTG CTCCAGGATT CATCCATCTA CGCACCGAGT GTGGGCCCAG GAAAGAACCG
    TGTCAGGAAA AGGCTGCCCT TGAGAGGGTA CTTCGGCAAA AGCAAGATGC CCAAGGGTTC
    ACACCTCCCC AGCTGGGCGC CAGCCAACAG TATGCATCTG ACTTCCATAA CGTTTTGAAG
    GAGGAGCAGG AGGCACTGTG CTTGGATCTG CGGGGCACAG AGAGGCGAGA GGAGAGGAGG
    GAGCCTGAGC CCCACAGCAG GCAAGGACAA GCTCTGGGGG TGAAGAGAGG GTGCCAGCTC
    CATGAGCCCA GCTCGGCACT GTGTCCAGCT CCATCCGCCA AAGTCATCAA GATGCCCAGG
    GGTGGCCCCC AACAGCTGGG GACGGGGGCC AACACTCCAG CCAGGGTCTT TGTGGCCCTC
    TCTGATTACA ACCCCCTGGT GATGTCTGCC AACCTCAAGG CTGCAGAGGA GGAGCTGGTC
    TTCCAGAAAA GGCAGTTGCT AAGAGTGTGG GGCTCTCAGG ACACCCATGA TTTCTACCTC
    AGCGAGTGCA ACAGGCAAGT GGGCAATATC CCCGGGCGCC TAGTGGCTGA GATGGAGGTG
    GGGACAGAGC AGACTGATAG GAGGTGGCGT TCTCCGGCCC AAGGGCACCT GCCTTCTGTG
    GCCCACCTCG AGGACTTTCA GGGGCTCACC ATCCCCCAGG GTTCCTCCCT GGTGCTCCAG
    GGGAACTCCA AGAGACTCCC ACTGTGGACT CCAAAGATCA TGATAGCAGC TCTGGACTAT
    GATCCTGGGG ATGGGCAAAT GGGGGGCCAG GGGAAGGGCA GGCTGGCGCT GAGGGCAGGA
    GACGTGGTCA TGGTTTACGG GCCCATGGAT GACCAAGGAT TCTATTATGG AGAGTTGGGC
    GGCCACAGGG GCCTGGTTCC TGCCCACCTG CTGGATCACA TGTCCCTCCA TGGACACTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.